Building the Future: Integrating Phase Change Materials in Network of Nanogrids (NoN) DOI Creative Commons
Ali Raza Kalair, Elmira Jamei, Mehdi Seyedmahmoudian

et al.

Energies, Journal Year: 2024, Volume and Issue: 17(23), P. 5862 - 5862

Published: Nov. 22, 2024

Buildings consume 10% of global energy and 50% electricity for heating cooling. Transitioning to energy-efficient buildings is essential address the challenge meet sustainable development goals (SDGs) limit temperature rise below 1.5 °C. The shift from traditional smart grids has led micro, milli, nanogrids, which share resources symbiotically balance heating/cooling demands dealing with acute doldrums (dunkelflaute). This scoping review explores methods by phase change materials (PCMs) can be used in residential form a nanogrid. examines components concepts that promote seamless integration PCMs houses. It also discusses key challenges (e.g., scalability, stability, economic feasibility high summer temperatures), proposing community-scale network nanogrids (NoN) potential thermochromic photochromic materials. findings this highlight importance latent heat storage ingenious grid architectures such as construct resilient houses future thereby offer practical insights policymakers industries sector.

Language: Английский

Advancing Thermal Energy Storage with Industrial and Agricultural Waste-Derived Phase Change Materials: A Path Towards Sustainable Energy Systems DOI

S. Manikandan,

Yuvarajan Devarajan,

Sundaram Vickram

et al.

Process Safety and Environmental Protection, Journal Year: 2025, Volume and Issue: unknown, P. 107068 - 107068

Published: March 1, 2025

Language: Английский

Citations

2

Enhancing the thermal performance of cementitious composites: A comprehensive review of phase change material integration DOI

J.S. Siddesh,

K. N. Shivaprasad,

Hyun Min Yang

et al.

Applied Thermal Engineering, Journal Year: 2025, Volume and Issue: unknown, P. 125849 - 125849

Published: Feb. 1, 2025

Language: Английский

Citations

1

Reversible thermochromic microencapsulated phase change materials with silane-terminated polyurethane shell DOI
Shuhui Liu, Hang Zhang, Xingxiang Zhang

et al.

Journal of Energy Storage, Journal Year: 2025, Volume and Issue: 119, P. 116329 - 116329

Published: March 29, 2025

Language: Английский

Citations

0

Enhanced webbed-tubes thermal storage unit for solar heaters DOI
Abdeldjalil Belazreg, Naef A.A. Qasem, Aissa Abderrahmane

et al.

Results in Engineering, Journal Year: 2025, Volume and Issue: 26, P. 104750 - 104750

Published: April 3, 2025

Language: Английский

Citations

0

Assessment of phase change material within hollow steel balls mixed with graphite powder-enhanced concrete for underground energy structures DOI

Pengju Chen,

Chenglong Wang, Abdelmalek Bouazza

et al.

Journal of Energy Storage, Journal Year: 2025, Volume and Issue: 120, P. 116489 - 116489

Published: April 5, 2025

Language: Английский

Citations

0

Finite Element and Genetic Algorithm-Based Optimization of Phase Change Material Integration for Passive Thermal Regulation in Studio Apartments in Portugal DOI Creative Commons
Ajitanshu Vedrtnam, Kishor Kalauni, Nelson Soares

et al.

Journal of Building Engineering, Journal Year: 2025, Volume and Issue: unknown, P. 112647 - 112647

Published: April 1, 2025

Language: Английский

Citations

0

Research on dynamic cooling load prediction method of cascaded-CPCMs building based on machine learning DOI
Xiangfei Kong, Cun Zhao, Huliang Dai

et al.

Applied Thermal Engineering, Journal Year: 2025, Volume and Issue: unknown, P. 126644 - 126644

Published: April 1, 2025

Language: Английский

Citations

0

Seasonal thermal performance of a macro-encapsulated phase change material blind integrated double skin façade system: An experimental study DOI

Yilin Li,

Sipeng Fu,

Yidong Li

et al.

Energy and Buildings, Journal Year: 2024, Volume and Issue: 325, P. 114952 - 114952

Published: Oct. 28, 2024

Language: Английский

Citations

2

Building the Future: Integrating Phase Change Materials in Network of Nanogrids (NoN) DOI Creative Commons
Ali Raza Kalair, Elmira Jamei, Mehdi Seyedmahmoudian

et al.

Energies, Journal Year: 2024, Volume and Issue: 17(23), P. 5862 - 5862

Published: Nov. 22, 2024

Buildings consume 10% of global energy and 50% electricity for heating cooling. Transitioning to energy-efficient buildings is essential address the challenge meet sustainable development goals (SDGs) limit temperature rise below 1.5 °C. The shift from traditional smart grids has led micro, milli, nanogrids, which share resources symbiotically balance heating/cooling demands dealing with acute doldrums (dunkelflaute). This scoping review explores methods by phase change materials (PCMs) can be used in residential form a nanogrid. examines components concepts that promote seamless integration PCMs houses. It also discusses key challenges (e.g., scalability, stability, economic feasibility high summer temperatures), proposing community-scale network nanogrids (NoN) potential thermochromic photochromic materials. findings this highlight importance latent heat storage ingenious grid architectures such as construct resilient houses future thereby offer practical insights policymakers industries sector.

Language: Английский

Citations

1